The ANADIGICS ACA2604 amplifier for Fiber-to-the-Home (FTTH) applications is intended to be used in conjunction with the triplexer in fiber-coax line terminals. The device is driven by, and amplifies the output of, the video downstream path photodiode.
The high-impedance input of the ACA2604 eliminates the need for a costly transformer usually needed to interface to the photodiode, and a low equivalent input noise level offers excellent sensitivity. The device provides sufficient linearity to maintain low CTB and CSO levels in full-bandwidth (132 channel) systems, even across a wide gain adjustment range.
The ACA2604 is manufactured using ANADIGICS’s proven MESFET technology that offers state-of-theart reliability, temperature stability and ruggedness. The device operates from a single +5 V supply and is offered in a 5 mm x 5 mm x 1 mm surface mount package.

*50 - 870 MHz Operating Frequency
*High Linearity: 65 dBc CTB/CSO (79 Chan.)
*Low Equivalent Input Noise: 4.5 pA/rtHz
*22 dB Gain Adjust
*400  Differential Input Impedance: No Transformer Required for Interface to Photodiode
*Single +5 V Supply
*5 mm x 5 mm x 1 mm Surface Mount Package
*RoHS Compliant Package
*Pin Compatible with the ACA2601

*FTTH RF Amplifier Used in Conjunction With Triplexer in Fiber-Coax Line Terminals

TAG Amplifier, RF

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Product Description
The PE43602 is a HaRP™-enhanced, high linearity, 6-bit RF Digital Step Attenuator (DSA) covering a 31.5 dB attenuation range in 0.5 dB steps. This Peregrine 50Ω RF DSA provides both a serial and parallel CMOS control interface. It maintains high attenuation accuracy over frequency and temperature and exhibits very low insertion loss and low power consumption.
Performance does not change with Vdd due to on-board regulator. This next generation Peregrine DSA is available in a 4x4 mm 24 lead QFN footprint.
The PE43602 is manufactured on Peregrine’s UltraCMOS™ process, a patented variation of silicon-on-insulator (SOI) technology on a sapphire substrate, offering the performance of GaAs with the economy and integration of conventional CMOS.

*HaRP™-enhanced UltraCMOS™ device
*Attenuation: 0.5 dB steps to 31.5-dB
*High Linearity: Typical +58 dBm IP3
-Excellent low-frequency performance
*3.3 V or 5.0 V Power Supply Voltage
*Fast switch settling time
*Programming Modes:
-Direct Parallel
-Latched Parallel
*High-attenuation state @ power-up (PUP)
*CMOS Compatible
*No DC blocking capacitors required
*Packaged in a 24-lead 4x4x0.85 mm QFN

PE43602MLI, PE43602MLI-Z, EK43602-01

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Product Overview
TRC102 is a highly integrated single chip, zero-IF, multi-channel, low power RF transceiver. It is an ideal fit for low cost, high volume, two way short-range wireless applications for use in the unlicensed 400-1000 MHz frequency bands. The TRC102 is FCC & ETSI certifiable and improves upon the TRC101 with improved phase noise and is capable of higher output power. All critical RF and baseband functions are completely integrated in the chip, thus minimizing external component count and simplifying and speeding design-ins. Use of a low cost, generic 10MHz crystal and a low-cost microcontroller is all that is needed to create a complete link. The TRC102 also incorporates different sleep modes to reduce overall current consumption and extend battery life. Its small size with low power consumption makes it ideal for various short range radio applications.

Key Features
*Modulation: FSK (Frequency Hopping Spread Spectrum capability)
*Frequency range: 400-1000 MHz
*High sensitivity: (-112 dBm)
*High data rate: Up to 256 kbps
*Low current consumption (RX current ~11mA)
*Operating supply voltage: 2.2 to 3.8V
*Low standby current (0.3uA)
*Programmable Synch Byte
*Integrated PLL, IF, Baseband Circuitry
*Automatic Frequency Adjust(TX/RX frequency alignment)
*Programmable Analog/Digital Baseband Filter
*Programmable Output RF Power
*Programmable Input LNA Gain
*Internal Valid Data Recognition
*Transmit/Receive FIFO
*Standard SPI Interface
*TTL/CMOS Compatible I/O pins
*Programmable CLK Output Freq
*Automatic Antenna tuning circuit
*Low cost, generic 10MHz Xtal reference
*Integrated, Programmable Low Battery Voltage Detector
*Programmable Wake-up Timer with programmable Duty Cycle
*Integrated Selectable Analog/Digital RSSI
*Integrated Crystal Oscillator
*External Processor Interrupt pin
*Programmable Crystal Load Capacitance
*Programmable Data Rate
*Integrated Clock & Data Recovery
*Programmable FSK Deviation Polarity
*External Wake-up Events
*Support for Multiple Channels
-[433 Bands] 95 Channels (100kHz)
-[868 Band] 190 Channels (100kHz)
-[915 Band] 285 Channels (100kHz)
*Power-saving sleep mode
*Very few external components requirement
*Small size plastic package: 16-pin TSSOP
*Standard 13 inch reel, 2000 pieces.

Popular applications
*Active RFID tags
*Automated Meter reading
*Home & Industrial Automation
*Security systems
*Two way Remote keyless entry
*Automobile Immobilizers
*Sports & Performance monitoring
*Wireless Toys
*Medical equipment
*Low power two way telemetry systems
*Wireless mesh sensors
*Wireless modules

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The RF Solutions RF600E, & RF600D are easy to use encoder and decoder I/C’s. They have been designed to achieve the maximum possible range from any radio / Infra Red transmitter receiver set.
Unlike other encoder /decoder devices the RF600E/600D provide an unprecedented level of security which prevents copying or grabbing whist also obtaining optimum range from the transmitter and receiver.
The devices are very easy to use and can be inserted directly into a circuit. The RF600D has an easy learn feature enabling it to learn up to 7 unique RF600E encoder devices in standalone mode or up to 48 encoder devices when used in conjunction with an external EEPROM.
These devices enable a simple but secure remote telemetry application whilst obtaining the maximum range from the radio set.

*Highly Secure Protocol
*RF Encoder & Decoder IC’s
*Simple to Use
*Stand Alone Operation
*Achieves Maximum Range from RF Modules
*1 – 4 Switch Options (15 states)
*Decoder Serial Output
*Led Indication of Transmission
*Directly Compatible with Keeloq Decoder
*Easy Learn Feature of Transmitters
*Sleep Mode
*Up to 48 Transmitters can be Learned
*Optimum Range: AM up to 100m, FM up to 200m, IR up to 20m
*Compatible with RF Solutions Systems

Typical Applications
*General Purpose Remote Control
*Automotive alarm systems
*Gate and garage openers
*Electronic door locks
*Identity tokens
*Burglar alarm systems

RF600E, RF600E-SO, RF600DR6, RF600DR6-SO, RF600D8R6, RF600D-SO8R6

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Designed for N-CDMA base station applications with frequencies from 1930 to 1990 MHz. Suitable for TDMA, CDMA and multicarrier amplifier applications.
To be used i n Class AB for PCN - PCS/cel lular radi o and WLL applications.
*Typical 2-Carrier N-CDMA Performance: VDD = 28 Volts, IDQ = 950 mA
Pout = 22 Watts Avg., Full Frequency Band, IS-95 CDMA (Pilot, Sync, Paging, Traffic Codes 8 Through 13) Channel Bandwidth = 1.2288 MHz.
PAR = 9.8 dB @ 0.01% Probability on CCDF.
- Power Gain - 14.5 dB
- Drain Efficiency - 25.5%
- IM3 @ 2.5 MHz Offset - -37 dBc in 1.2288 MHz Bandwidth
- ACPR @ 885 kHz Offset - -51 dBc in 30 kHz Bandwidth
*Capable of Handling 5:1 VSWR, @ 28 Vdc, 1960 MHz, 100 Watts CW Output Power

*Characterized with Series Equivalent Large-Signal Impedance Parameters
*Internally Matched for Ease of Use
*Qualified Up to a Maximum of 32 VDD Operation
*Integrated ESD Protection
*N Suffix Indicates Lead-Free Terminations
*Designed for Lower Memory Effects and Wide Instantaneous Bandwidth Applications
*200°C Capable Plastic Package
*RoHS Compliant
*In Tape and Reel. R1 Suffix = 500 Units per 44 mm, 13 inch Reel.

MRF6S19100NBR1, MRF6S19100N

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*Package size 3.0 x 3.0 x 1.1 mm3
*Maximum height of 1.225 mm
*Package code QCC8D
*RoHS compatible
*Approximate weight 0.037 g
*Package for Surface Mount Technology (SMT)
*Ni, gold-plated terminals
*Electrostatic Sensitive Device (ESD)

*Low loss RF filter for satellite BTS
*Usable passband 40.0 MHz
*Low insertion attenuation
*Low amplitude ripple
*Low group delay ripple
*Balanced to balanced operation
*No matching network required for operation at 150 W


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* Package size 3.0 x 3.0 x 1.1 mm3
* Maximum height of 1.225 mm
* Package code QCC8D
* RoHS compatible
* Approximate weight 0.037 g
* Package for Surface Mount Technology (SMT)
* Ni, gold-plated terminals
* Electrostatic Sensitive Device (ESD)

* Low loss RF filter for satellite BTS
* Usable passband 40.0 MHz
* Low insertion attenuation
* Low amplitude ripple
* Low group delay ripple
* Balanced to balanced operation
* No matching network required for operation at 150 W
TAG filter, RF, SAW

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RF transceiver with integrated ADCs and DACs
IEEE 802.16 WiMAX
3.3 GHz to 3.8 GHz
3.5 MHz < BW < 20 MHz
Superior receiver sensitivity with NF 3.2 dB
Highly linear and spectrally pure transmitter Tx EVM: −36 dB SNR > 134 dB/Hz at fOFFSET > 22 MHz Tx power control
Range: 0 dB to 58 dB
Resolution: 0.25 dB
Autonomous AGC and Tx power control
Automatic frequency correction < 0.012 ppm
Integrated fractional-N synthesizer
8 Hz LO step size
Integrated phase noise < 0.8°rms

The AD9353 is a fully integrated transceiver for IEEE 802.16 WiMAX wireless network systems. The RF MxFE® combines the RF front end with mixed-signal baseband enabling an easy-
to-use digital interface to the baseband ASIC or FPGA. The AD9353 operates in the 3.3 GHz to 3.8 GHz range covering most of the licensed and unlicensed bands. Channel bandwidths of 3.5 MHz, 4.375 MHz, 5 MHz, 7 MHz, 8.75 MHz, 10 MHz, 14 MHz, 17.5 MHz, and 20 MHz are supported.
The direct-conversion receiver has state-of-the-art noise figure and linearity, and requires no external components with the exception of a balun. The complete RF subsystem integrates an autonomous AGC loop and dc offset corrections, thus eliminating the need for high speed interaction with the baseband processor. The received signal strength indicator
(RSSI) has over 80 dB of dynamic range with 0.5 dB resolution and is accessible via the serial interface.
The received signal is digitized with a high dynamic range 12-bit ADC. Decimation and channel filters produce a 10-bit output signal at the appropriate sample rate determined by the bandwidth mode. The transmit path takes 10-bit input data and interpolates before converting to the analog domain and upconverting to the carrier frequency.
The highly linear transmit path has excellent spectral purity with sideband noise less than −134 dBc/Hz at 22 MHz offset and offers EVM of −36 dB at 0 dBm output power. The transmit
power is detected by an accurate power detector and autono- mously controlled with a range of 58 dB and 0.25 dB steps.
The output power can be calibrated at the factory by a single measurement. The reference frequency is produced by an internal crystal oscillator that has a digital programmable   frequency with 0.012 ppm resolution, thus reducing the total bill of materials of the device. An internal auxiliary ADC and two auxiliary DACs are available for system monitoring and control. Three general- purpose I/Os are also included and can be register programmed or automatically sequenced by a user-defined state machine.
Mode control is via a 4-wire serial port and four real-time I/O control pins.
The AD9353 is powered from a single 3.3 V supply and contains on-chip LDOs for each  function to eliminate external regula- tors. The AD9353 is packaged in a 9 mm × 9 mm, 64-lead LFCSP.

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* Dual RF synthesizers
* RF1: 2.3 GHz to 2.6 GHz
* RF2: 750 MHz to 1.7 GHz
* IF synthesizer
* IF: 62.5 MHz to 1.0 GHz
* Integrated VCOs, loop filters, dividers, and phase detectors
* Minimal external components
* Continuous operation over a wide temperature range
* Fast settling time: 200 μsec
* Low phase noise
* 5 μA standby current
* 28-lead MLP, 5 x 5 mm

* Single-mode W-CDMA wireless handsets, terminals, and modems
* Dual-mode GSM/UMTS wireless handsets, terminals, and modems

The Si4133W is a monolithic integrated circuit that performs RF and IF synthesis for GSM/GPRS and W-CDMA wireless communications. In dualmode GSM/UMTS handsets, the Si4133W meets demanding requirements for very low phase noise and fast settling time for both modes. The Si4133W integrates three complete phase-locked loops (PLLs) on a single die including VCOs, loop filters, reference and VCO dividers, and phase detectors. Dividers and powerdown settings are programmable through a three-wire serial interface.



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The B41 is four independent form A channels in one planar quad package. Coto’s Ball Grid Array (BGA) construction offers a breakthrough in reed relay performance. This patented technology1 allows for shorter RF paths in a controlled 50 Ω environment to minimize signal attentuation. The designer is now able to switch or pass signals with wider bandwidth and faster rise time than alternative technologies.
This is particularly important in Mixed Signal IC testers. This four-inone BGA packaging allows relays to be integrated easily on boards designed for surface mount processing.

Series Features
* Planar BGA Surface Mount
* Ability to pass GHz signals
* Rise time < 45 ρSec
* ~50 Ω Characteristic Impedance
* Low Capacitance
* Patented Design

* IC Testers
* In-Line Relay Testers
* Memory Testers
* Mixed Signal Testers
* High Bandpass Applications


TAG Relay, RF

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